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首页> 外文期刊>Investigative ophthalmology & visual science >Coherent anti-stokes raman scattering (CARS) microscopy: A novel technique for imaging the retina
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Coherent anti-stokes raman scattering (CARS) microscopy: A novel technique for imaging the retina

机译:相干抗焦炭拉曼散射(CARS)显微镜:一种用于视网膜成像的新技术

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PURPOSE. To image the cellular and noncellular structures of the retina in an intact mouse eye without the application of exogenous fluorescent labels using noninvasive, nondestructive techniques. METHODS. Freshly enucleated mouse eyes were imaged using two nonlinear optical techniques: coherent anti-Stokes Raman scattering (CARS) and two-photon autofluorescence (TPAF). Cross sectional transverse sections and sequential flat (en face) sagittal sections were collected from a region of sclera approximately midway between the limbus and optic nerve. Imaging proceeded from the surface of the sclera to a depth of ~60 lm. RESULTS. The fluorescent signal from collagen fibers within the sclera was evident in the TPAF channel; the scleral collagen fibers showed no organization and appeared randomly packed. The sclera contained regions lacking TPAF and CARS fluorescence of ~3 to 15 lm in diameter that could represent small vessels or scleral fibroblasts. Intense punctate CARS signals from the retinal pigment epithelial layer were of a size and shape of retinyl storage esters. Rod outer segments could be identified by the CARS signal from their lipid-rich plasma membranes. CONCLUSIONS. CARS microscopy can be used to image the outer regions of the mammalian retina without the use of a fluorescent dye or exogenously expressed recombinant protein. With technical advancements, CARS/TPAF may represent a new avenue for noninvasively imaging the retina and might complement modalities currently used in clinical practice.
机译:目的。使用无创,非破坏性技术在不施加外源荧光标记的情况下在完整的小鼠眼中成像视网膜的细胞和非细胞结构。方法。使用两种非线性光学技术对新鲜去核的鼠眼成像:相干抗斯托克斯拉曼散射(CARS)和两光子自发荧光(TPAF)。从角膜缘和视神经之间大约中间的巩膜区域收集横截面横截面和连续的平面(面部)矢状切面。成像从巩膜表面进行到约60 lm的深度。结果。在TPAF通道中,巩膜内胶原纤维发出的荧光信号很明显。巩膜胶原纤维无组织,随机排列。巩膜包含的区域缺乏直径约3至15 lm的TPAF和CARS荧光,这些区域可能代表小血管或巩膜成纤维细胞。来自视网膜色素上皮层的强烈点状CARS信号具有视黄基存储酯的大小和形状。杆外段可以通过来自其富含脂质的质膜的CARS信号来识别。结论。 CARS显微镜可用于成像哺乳动物视网膜的外部区域,而无需使用荧光染料或外源表达的重组蛋白。随着技术的进步,CARS / TPAF可能代表了非侵入性成像视网膜的新途径,并且可能会补充目前在临床实践中使用的方式。

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